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The time unit for arranging the rate matched bits is the Transmission Time Interval (TTI).
Thus, TTI is the time unit for LBPS to estimate the length of the sleep cycle in LTE.
Hence, the call completion (termination) probability Pterm = P (Tcall ≤ Tth), where Tth is the time unit for the user state transition diagram, as shown in Figure 5. 4.
This contention window is used as time unit for a node to detect the transmission of a frame from any other node.
The rate of divergence can increase up to about 5 digits per Hénon time unit for 128 particles and it increases with N. We use the open-source library GMP: http://gmplib.org/.
As illustrated in Fig. 4, the basic time unit for packet scheduling and transmission in LTE is called a TTI (transmission time interval) with a length of 1 ms.
Similar(45)
Tmax=370 distance (time) units for this town.
The time units for use in EASO-TDMA are explained in descending order of their length.
Moreover, it is worth pointing out that the total schedule time in Figure2 should not be measured by the number of time assignments for all links, as done in Figure1, but by the span of time units for all links.
The predefined QC sampling intervals Δt1 with acceptable residual risk measure rrn,1,2,2 for all the initial times t0 were: From 1 to 5 time units for the Monte Carlo simulation I. From 1 to 4 time units for the Monte Carlo simulation II.
The time units for the distributions are days.
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